Diagrid structures, known for their structural efficiency and esthetic appeal, offer significant advantages in tall building design by distributing loads efficiently and reducing the need for internal columns. However, their application in tilted buildings presents unique challenges due to asymmetrical loading and lateral forces. To address these challenges, hybrid diagrid systems combine the benefits of diagrid structures with additional structural elements, such as traditional columns or shear walls, strategically placed to enhance stability and structural performance. By integrating these systems, designers can achieve optimal structural efficiency, stability, and architectural expression in tall tilted buildings. Using E-tabs software, the 36-story tall buildings are analyzed using diagrid and hybrid diagrid structural systems under lateral loads. The parameters such as time period, story drift, lateral displacement, and load distribution are compared.

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Innovative Structural Systems for Tall Tilted Buildings Utilizing Diagrid and Hybrid Diagrid Configuration Under Lateral Loads

  • Sagarkumar Naik,
  • C. D. Modhera

摘要

Diagrid structures, known for their structural efficiency and esthetic appeal, offer significant advantages in tall building design by distributing loads efficiently and reducing the need for internal columns. However, their application in tilted buildings presents unique challenges due to asymmetrical loading and lateral forces. To address these challenges, hybrid diagrid systems combine the benefits of diagrid structures with additional structural elements, such as traditional columns or shear walls, strategically placed to enhance stability and structural performance. By integrating these systems, designers can achieve optimal structural efficiency, stability, and architectural expression in tall tilted buildings. Using E-tabs software, the 36-story tall buildings are analyzed using diagrid and hybrid diagrid structural systems under lateral loads. The parameters such as time period, story drift, lateral displacement, and load distribution are compared.